Official Python SDK for the Lenz Fact Checking API for AI Product Teams
Project description
lenz-io
Official Python SDK for the Lenz Fact Checking API for AI Product Teams.
Four API primitives, one research-depth ladder.
extract— pull verifiable claims out of any text. Free, 1000 calls/key/day.assess— fast 3-model panel verdict in ~5-10s. Sync, paid.verify— full 8-model pipeline with citations in ~90s. Async, paid.ask— follow-up questions grounded on a verification.
Built for teams whose AI output is async or document-shaped: legal-memo generators, deep-research products, due-diligence platforms, vertical agents producing structured deliverables. Not chat AI, not voice AI, not real-time copilots — pipeline runs are the wrong shape for those.
pip install lenz-io
Command-line tool
The same primitives from your terminal — submit, poll, and read full reports.
Ships inside this package behind the cli extra (quotes matter — bare brackets
are a glob in zsh):
pipx install "lenz-io[cli]" # isolated CLI install (recommended)
pip install "lenz-io[cli]" # or into your current environment
lenz login # paste an API key (free — get one at lenz.io/api-integration)
lenz extract "Einstein won the 1921 Nobel for relativity" # free, 1000/day
lenz assess "The Great Wall is visible from space" # fast verdict
lenz verify "Water boils at 90C at sea level" # full pipeline (~90s)
lenz verify "<claim>" --json | jq .verdict # machine-readable
lenz status <task_id> # non-blocking: poll a verify task's progress
lenz show <verification_id> # full report — sources, warnings, panel + debate (-c for concise)
lenz ask <verification_id> "Which source is strongest?"
lenz usage # plan, remaining quota, and when it resets
lenz config # show which key/base URL is in use
Every command takes --json for a clean machine-readable object (also emitted
automatically when stdout is not a TTY, so pipes Just Work). Errors in --json
mode are {"error": {"code", "message", "status"}} on stdout with a nonzero
exit. verify blocks with a progress spinner; Ctrl-C prints a
lenz verify --resume <task_id> handle so a long run isn't lost. Key resolution
order is --api-key flag → LENZ_API_KEY → ~/.config/lenz/config.json.
Scripting the lifecycle (no blocking). verify --detach returns a
task_id immediately; poll it with status and read the full report with
show once it completes:
tid=$(lenz verify "<claim>" --detach --json | jq -r .task_id)
lenz status "$tid" --json | jq -r .status # processing → completed
lenz show <verification_id> --json # full report once done
If the input holds several claims, status reports needs_input and lists
them; resolve it non-interactively by index (spawns one verification per pick):
lenz verify --resume "$tid" --claim 1,3 --detach --json # → spawned task_ids
Quickstart — the canonical integration
from lenz_io import Lenz
client = Lenz(api_key="lenz_...")
# 1. extract — pull verifiable claims out of any text (free)
out = client.extract(text=llm_output)
# 2. assess — fast 3-model verdict on each (~5-10s, sync)
quick = client.assess(text=llm_output)
for c in quick.claims:
print(c.verdict, c.confidence, c.claim)
# 3. verify — escalate low-confidence claims to the full panel + citations
for c in quick.claims:
if c.confidence == "low":
v = client.verify_and_wait(claim=c.claim)
print(v.verdict, v.lenz_score, v.executive_summary)
# 4. ask — follow-up grounded on a verification
reply = client.ask.send(v.verification_id, message="Which source is strongest?")
print(reply.reply)
assess and verify share a result cache server-side: if a claim
already has a deep verification, assess returns it via
verification_url and you can skip the escalation.
How verification works
Framing → Research → Debate (2 models, 2 rounds) → Panel Review
(3 reviewers: source quality, logical structure, claim precision) → Conclusion. ~90 seconds wall-clock
per claim. assess runs a leaner 3-model panel against the same
framing for the ~5-10s pass.
Quickstart demo
from lenz_io import Lenz
client = Lenz(api_key="lenz_...")
v = client.verify_and_wait(claim="Sharks don't get cancer")
print(v.verdict, v.lenz_score)
# False 2.0
for source in v.sources[:3]:
print(" -", source.title, source.url)
The demo claim is pre-cached so this returns in ~1.5s. Your own claims hit the full pipeline (~60-90s) — use webhooks for production async flows.
Get your webhook secret here → lenz.io/api-integration
What you get on the client
client.extract(text=...)→ExtractedClaims. Free, capped at 1000/key/day.client.assess(text=...)→AssessResponse. Sync, ~5-10s, returns one entry per identified claim.client.verify(...)→TaskAccepted. Async submit; returns atask_id. Get the result by polling (client.wait(...)/client.get_status(...)) or via a webhook.client.verify_and_wait(...)→Verification. Submit + poll until the pipeline lands (sync ergonomic). Equivalent towait(verify(...)).client.wait(task)→Verification. Block on atask_id(or aTaskAccepted) until it terminates. The polling counterpart to a webhook.client.verify_batch(claims=[...])→BatchAccepted. Fan-out for multi-claim LLM outputs.client.verify_batch_and_wait(claims=[...])→list[BatchItemResult]. Fan out a batch and poll every item to completion; one result per claim, in input order, never raises on a per-item failure.client.ask.{history,send,reset}(verification_id, ...)→ Q&A on a verification.reply.contentuses a small markdown subset (**bold**,*italic*,-or*bullets, blank-line paragraphs) — render with a minimal markdown library or display verbatim. See docs/quickstart#ask-reply-format.client.verifications.{list,get,delete,related}(...)→ manage past verifications. All API claims are private; reference them byverification_id. Cache-hit on another customer's claim is transparent — you always see your ownverification_id, never another customer's.client.library.list(...)→ browse the public catalog (no API key needed).client.usage()→ remaining capacity per capability (verify/ask/assessquota + top-up credits, and the dailyextractrate limit). Also reportshas_webhook_secret— whether this key can receive signed webhook callbacks (verifywith awebhook_urlneeds one); the secret value itself is never exposed.
Polling without webhooks
verify() returns immediately with a task_id; the pipeline runs async (~60-90s
for a cold claim). You don't need webhooks to get the result — poll for it.
The one-liner is verify_and_wait(). If you already hold a task_id (or want to
submit and wait separately), use wait():
task = client.verify(claim="Sharks don't get cancer") # async, returns a task_id
verification = client.wait(task) # blocks until it lands
print(verification.verdict, verification.lenz_score)
To run several claims in parallel, submit a batch and wait on all of them.
verify_batch_and_wait returns one BatchItemResult per claim, in input order,
and never raises on a single claim failing — inspect each item's status:
results = client.verify_batch_and_wait(claims=[
{"text": "Sharks don't get cancer"},
{"text": "The Eiffel Tower is 330m tall"},
])
for r in results:
if r.status == "completed":
print(r.claim_text, "→", r.verification.verdict)
else:
print(r.claim_text, "→", r.status) # needs_input | failed | timeout
Prefer webhooks for production async flows (no long-lived HTTP connection);
prefer polling for scripts, notebooks, and request/response handlers where
blocking is fine. If you want full control over the loop, call get_status(task_id)
yourself — it's a single non-blocking poll.
Response shape — the unified vocabulary
Every claim-shaped response shares these fields at top level:
| Field | Type | Notes |
|---|---|---|
claim |
str |
The framed claim text. |
verdict |
str |
"True" | "Mostly True" | "Mixed" | "Mostly False" | "False" | "Error". |
confidence |
str |
Categorical: "high" | "medium" | "low". |
lenz_score |
int | None |
Integer 1–10 (deep verdicts and list endpoints; assess omits it). |
Webhooks
from lenz_io import LenzWebhooks, VerificationCompleted, VerificationNeedsInput
webhooks = LenzWebhooks(secret="whsec_...")
# In your web handler:
event = webhooks.parse(raw_body=request.body, headers=request.headers)
if isinstance(event, VerificationCompleted):
vid, result = event.verification_id, event.result
# result["verdict"], result["lenz_score"], result["confidence"], ...
elif isinstance(event, VerificationNeedsInput):
tid, ni = event.task_id, event.needs_input
...
If you're on Python 3.10+ a match statement reads even cleaner — events are
plain dataclasses, so structural pattern matching works.
Signature verification is HMAC-SHA256 over the raw body; the SDK does it for you and rejects tampered or replayed payloads.
See examples/core/fastapi_webhook.py
for a runnable FastAPI receiver, and examples/core/verify_llm_output.py
for the headline assess-then-escalate pattern.
Errors
Every error subclass is typed and carries a request_id you can quote on
support tickets:
from lenz_io import LenzAuthError, LenzRateLimitError, LenzValidationError
try:
client.verify_and_wait(claim="...")
except LenzAuthError as exc:
print(exc)
# Unauthorized
# Cause: Invalid api key
# Fix: Generate a new key at https://lenz.io/api-integration.
# Docs: https://lenz.io/docs/auth
# Request ID: req_abc123
except LenzRateLimitError as exc:
time.sleep(exc.retry_after)
except LenzValidationError as exc:
for field_err in exc.errors:
print(field_err["loc"], field_err["msg"])
Resuming a verification
If a verify_and_wait call exceeds its timeout (default 120s) or your
process dies mid-poll, the pipeline keeps running. The exception carries the
task_id:
from lenz_io import LenzTimeoutError
try:
client.verify_and_wait(claim="...", timeout=30)
except LenzTimeoutError as exc:
print("resume later via:", exc.task_id)
# Later (different process / restart) — block on the same task_id:
verification = client.wait("tsk_abc123")
print(verification.verdict, verification.lenz_score)
# ...or do a single non-blocking poll yourself:
status = client.get_status("tsk_abc123")
if status.status == "completed":
print(status.result.verdict, status.result.lenz_score)
Idempotency
verify_and_wait sends an auto-generated Idempotency-Key on every call by
default, so a network drop after submit doesn't spawn a duplicate verification
or charge a second credit. Override with idempotency_key="..." to pin a
specific key, or idempotency=False to opt out.
Multi-language output
The Lenz API returns prose fields (atomic claim, executive summary, debate, panel
reasoning) in any of 12 languages. Pass language= on verify, verify_and_wait,
verify_batch, assess, extract, or ask.send. Verdict labels stay English
regardless of language.
v = client.verify_and_wait(
claim="La Tierra es plana",
language="es", # Spanish output
)
print(v.verdict, v.language)
# False es
Supported codes: en (default), es, de, fr, it, pt, nl, sv, da,
no, fi, bg. Per-item override on verify_batch:
batch = client.verify_batch(
claims=[
{"text": "Coffee causes cancer."}, # en (batch default)
{"text": "El café causa cáncer.", "language": "es"}, # overrides
],
language="en",
)
Configuration
Lenz(
api_key="lenz_...", # or set LENZ_API_KEY env var
base_url="https://lenz.io/api/v1", # override for staging / local
timeout=30.0,
max_retries=3,
)
Environment variables:
LENZ_API_KEY— read ifapi_key=is not passedLENZ_BASE_URL— read ifbase_url=is not passed
Compatibility
- Python 3.9, 3.10, 3.11, 3.12
- Works in CI/CD (no interactive prompts, no global state)
- Mockable for tests: every HTTP call goes through
httpx; userespxor inject your ownhttpx.ClientviaLenz(..., http_client=...)
Contributing
git clone https://github.com/lenzhq/lenz-io-python && cd lenz-io-python
uv sync --extra dev
git config core.hooksPath scripts/hooks # one-time: enables pre-commit
The pre-commit hook mirrors CI exactly (ruff check, ruff format --check,
mypy, pytest). Runs ~10s per commit on a warm cache. Skip once with
git commit --no-verify when you must.
Bug reports + feature requests
github.com/lenzhq/lenz-io-python/issues
For commercial use, volume pricing, or onboarding support, get in touch.
License
MIT. See LICENSE.
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